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Studies on molluscan schistosomiasis: An analysis of the development of the cercaria of Schistosoma mansoni*

Published online by Cambridge University Press:  06 April 2009

Thomas C. Cheng
Affiliation:
Institute for Pathobiology and Department of Biology, Lehigh University, Bethlehem, Pennsylvania 18015, U.S.A.
Jeffrey W. Bier
Affiliation:
Institute for Pathobiology and Department of Biology, Lehigh University, Bethlehem, Pennsylvania 18015, U.S.A.

Extract

Development of cercariae within intramolluscan germinal sacs is recognized to be in seven stages; in brief, these stages are: 1, germinal cell; 2, naked cell aggregate; 3, germ ball prior to elongation; 4, elongating germ ball; 5, tail bud stage; 6, tail elongation stage; and 7, fully developed cercaria.

Schistosoma mansoni cercariae at each of the developmental stages is described.

The dimensions of both germinal and somatic cells comprising the bodies of developing S. mansoni cercariae decrease with maturation.

The surfacial membrane of Stage 3 cercarial embryos is formed by a number of small somatic cells which migrate to the surface and coalesce.

The chronologic and partially synchronized development of S. mansoni cercariae is presented.

The body-tail ratio during S. mansoni cercarial development is presented.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1972

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References

REFERENCES

Becker, W. (1968). Untersuchungen über die aus der Muttersporocyste auswandernden Tochtersporocysten von Schistosoma mansoni I. Beiträge zum Kohlenhydrastoffwechsel dieser Stadien. Zeitschrift für Parasitenkunde 30, 233–51.CrossRefGoogle Scholar
Bennett, H. J. (1936). The life history of Copylophoron cotylophorum, a trematode from ruminants. Illinois Biological Monographs 14, 1119.Google Scholar
Chen, P. D. (1937). The germ cell cycle in the trematode Paragonimus kellicotti Ward. Transactions of the American Microscopical Society 56, 208–36.CrossRefGoogle Scholar
Cheng, T. C. (1961). Studies on the morphogenesis, development and germ cell cycle in the sporocysts and cercariae of Glypthelmins pennsylvaniensis Cheng, 1961 (Trematoda: Brachycoeliidae). Proceedings of the Pennsylvania Academy of Science 35, 1022.Google Scholar
Cheng, T. C. & James, H. A. (1960). Studies on the germ cell cycle, morphogenesis and development of the cercarial stage of Crepidostomum cornutum (Osborn, 1903) (Trematoda: Allocreadiidae). Transactions of the American Microscopical Society 79, 7585.CrossRefGoogle Scholar
Coelho, M. V. (1957). Aspects do desenvolvimento das formas larvais de Schistosoma mansoni em Australorbis nigricans. Revista Brasileira de Biologia 17, 325–37.Google Scholar
Cort, W. W., Ameel, D. J. & Van der Woude, A. (1955). Germinal development in the sporocysts of a bird schistosoma Trichobilharzia physellae (Talbot, 1936). Journal of Parasitology 41, 2439.CrossRefGoogle ScholarPubMed
Dorsey, C. H. & Stirewalt, M. A. (1971). Schistosoma mansoni: fine structure of cercarial acetabular glands. Experimental Parasitology. (In the Press.)CrossRefGoogle ScholarPubMed
Faust, E. C. & Hoffman, W. A. (1934). Studies on schistosomiasis mansoni in Puerto Rico. III. Biological Studies. 1. The extra-mammalian phases of the life cycle. The Puerto Rican Journal of Public Health and Tropical Medicine 10, 147.Google Scholar
Heyneman, D. (1960). On the origin of complex life cycles in the digenetic flukes. In Libro Homenaje al Dr Eduardo Caballero y Caballero. Escuela Nacional de Cinencias Biologicas, Mexico, D.F. pp. 133–52.Google Scholar
Ishii, T. (1934). Studies on the development of Fasciolopsis buski. I. Development of the eggs outside the host. Journal of the Medical Association of Formosa 33, 349–78.Google Scholar
Lee, F. O. & Cheng, T. C. (1971). Schistosoma mansoni infection in Biomphalaria glabrata: respirometric and partial pressure studies. Experimental Parasitology. (In the Press.)CrossRefGoogle Scholar
Maldonado, J. F. (1967). Schistosomiasis in America. Editorial Cientifico-Medica, Barcelona, 120 pp.Google Scholar
Maldonado, J. F. & Acosta-Matienzo, J. (1947). The development of Schistosoma mansoni in the snail intermediate host, Australorbis glabratus. The Puerto Rican Journal of Public Health and Tropical Medicine 22, 331–73.Google ScholarPubMed
Newton, W. L. (1955). The establishment of a strain of Australorbis glabratus which combines albinism and high susceptibility to infection with Schistosoma mansoni. Journal of Parasitology 41, 526–8.CrossRefGoogle ScholarPubMed
Olivier, L. & Mao, C. P. (1949). The early larval stages of Schistosoma mansoni Sambon, 1907, in the snail host. Australorbis glabratus (Say, 1818). Journal of Parasitology 35, 267–75.CrossRefGoogle ScholarPubMed
Ortmann, W. (1908). Zur Embryonalentwicklung des Lebergels (Fasciola hepatica). Zoologischer Jahrbücher. Abteilung für Anatomie und Ontogenie der Tiere 26, 255–96.Google Scholar
Pan, C.-T. (1965). Studies on the host-parasite relationship between Schistosoma mansoni and the snail Australorbis glabratus. American Journal of Tropical Medicine and Hygiene 14, 931–76.CrossRefGoogle ScholarPubMed
Rees, G. (1940). Studies on the germ cell cycle of the digenetic trematode Parorchis acanthus Nicoll Part II. Structure of the miracidium and germinal development in the larval stages. Parasitology 32, 372–91.CrossRefGoogle Scholar
Smyth, J. D., Miller, H. J. & Howkins, A. B. (1967). Further analysis of the factors controlling strobilization, differentiation and maturation of Echinococcus granulosis in vitro. Experimental Parasitology 21, 3141.CrossRefGoogle Scholar
Stirewalt, M. A. & Kruidenier, F. J. (1961). Activity of the acetabular secretory apparatus of cercariae of Schistosoma mansoni under experimental conditions. Experimental Parasitology 11, 191211.CrossRefGoogle ScholarPubMed
Thomas, A. P. (1883). The life history of the liver fluke (Fasciola hepatica). Quarterly Journal of Microscopical Science 23, 99133.Google Scholar